IP Library Granted Patent US 11,413,761
Granted Patent B2
US 11,413,761 · App. 15/991,834 · Granted Aug 16, 2022

Modular platform for robotic end effector

Inventor: Matt Simkins (Redwood City, CA)
Assignee: ABB Schweiz AG
B25J9/1697B25J9/08B25J9/161B25J15/0061B25J15/0095B25J15/04B25J19/0025B25J19/023G05B2219/34205
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Quick Facts
Patent No.
US 11,413,761
App. No.
15/991,834
Granted
Aug 16, 2022
Kind
B2
Abstract

The disclosed system includes a robot system with a robot having a modular platform and a controller operably coupled to the robot. The modular platform includes a plurality of mount connectors and a plurality of receiving port connectors. Each of the mount connectors is configured to attach to the robot and each of the receiving ports is configured to connect to an end effector such as a gripper, sensor or other tool. The modular platform is configured to mount to the robot in a plurality of orientations and to connect with a plurality of different end effectors.

Claims (40)

1. A modular platform for a robot comprising:

a first portion comprising a first surface, the first surface comprising at least three mount connectors, each mount connector being connectable to the robot; and

a second portion comprising a second surface that is connectable to one or more of a plurality of different robot end effectors, the second surface including a plurality of receiving ports, each receiving port configured to connect with an end effector and comprising a plurality of fastening apertures structured to receive a plurality of fasteners, the plurality of fastening apertures located radially outward from a fluid port structured to convey a hydraulic fluid, each receiving port further comprising an electrical power port and a communication port,

wherein the first surface of the first portion of the modular platform is structured to be releasably connectable to a second surface of a second portion of a second modular platform,

wherein the second surface of the second portion of the modular platform is structured to be releasably connectable to a first surface of a first portion of the second modular platform, and

wherein each receiving port is configured to be releasably connectable to a mount connector on a plurality of additional modular platforms.

2. The modular platform of claim 1 wherein at least one fluid port is a fluid input port.

3. The modular platform of claim 1 wherein at least one fluid port is a fluid outlet port.

4. The modular platform of claim 1 wherein at least one electrical power port is an electrical power input port located radially inward from the plurality of fastening apertures of at least one of the receiving ports.

5. The modular platform of claim 1 wherein at least one electrical power port is an electrical power outlet port located radially inward from the plurality of fastening apertures of at least one of the receiving ports.

6. The modular platform of claim 1 wherein at least one communication port is a communication input port located radially inward from the plurality of fastening apertures of at least one of the receiving ports.

7. The modular platform of claim 1 wherein at least one communication port is a communication output port located radially inward from the plurality of fastening apertures of at least one of the receiving ports.

8. The modular platform of claim 1 , wherein the plurality of fastening apertures are threaded apertures.

9. The modular platform of claim 1 , wherein each connected end effector includes one or more of a gripper, a sensor, and a tool.

10. The modular platform of claim 1 further comprising means for connecting two or more modular platforms together.

11. The modular platform of claim 1 further comprising an electrical power port located radially inward from the plurality of fastening apertures and a communication port located radially inward from the plurality of fastening apertures.

12. The modular platform of claim 1 , which further includes a modular housing having the first portion and the second portion, wherein the first portion is opposite the second portion, and wherein the modular housing includes a housing side fluid port structured to be in fluid communication with the fluid port during operation of the end effector, the housing also including at least one of a housing side communication port and a housing side electrical power port.

13. The modular platform of claim 1 wherein the first surface of the first portion of the modular platform is structured to be releasably connectable to both the second surface of the second portion of the second modular platform and a second surface of a second portion of a third modular platform at the same time, and

wherein the second surface of the second portion of the modular platform is structured to be releasably connectable to both the first surface of the first portion of the second modular platform and a first surface of a first portion of the third modular platform at the same time.

14. A method comprising:

connecting a modular platform to a robot assembly, the modular platform comprising a front side and a backside, the front side having at least three mounting locations, each mounting location being connectable to a robot, the backside disposed opposite the front side and having at least two receiving ports, each receiving port configured to be releasably connectable to a mounting location on a plurality of additional modular platforms and including a plurality of fastening apertures structured to receive a plurality of fasteners, the plurality of fastening apertures located radially outward from a fluid port structured to convey a hydraulic fluid; and

coupling one or more end effectors to the modular platform, wherein the modular platform is configured to couple with a plurality of different end effectors,

wherein the connecting includes connecting a second modular platform to a robot to form the robot assembly where the backside of the modular platform is connected to a front side of the second modular platform, the front side of the second modular platform having at least two second receiving ports, each second receiving port including a second plurality of fastening apertures structured to receive a second plurality of fasteners, each second plurality of fastening apertures also located radially outward from a second fluid port structured to convey the hydraulic fluid.

15. The method of claim 14 , wherein the coupling includes transmitting electrical power via an electrical conduit though the modular platform to each of the one or more end effectors, wherein the electrical conduit is located radially inward of the plurality of fastening apertures.

16. The method of claim 14 , wherein the coupling includes transmitting communication signals though the fluid port of the modular platform to each of the one or more end effectors.

17. The method of claim 14 , wherein the coupling includes directing the hydraulic fluid though the modular platform to one or more of the end effectors.

18. A robot system comprising:

a robot;

a controller operably coupled to the robot;

a modular platform having a first surface comprising at least three mount connectors and a second surface disposed opposite the first surface and comprising a plurality of receiving ports; and

wherein each of the mount connectors is configured to attach to the robot and each of the receiving ports is configured to connect to an end effector;

wherein each of the plurality of receiving ports is configured to be releasably connectable to a mount connector on a plurality of additional modular platforms and includes a plurality of fastening apertures structured to receive a plurality of fasteners, the plurality of fastening apertures located radially outward from a fluid port located in the receiving port and structured to convey a hydraulic fluid, each receiving port further comprising an electrical power port and a communication port; and

wherein the first surface of the modular platform is structured to be releasably connectable to a second surface of a second modular platform, and

wherein the second surface of the modular platform is structured to be releasably connectable to a first surface of the second modular platform.

19. The robot system of claim 18 , wherein the plurality of fastening apertures are threaded apertures.

20. The robot system of claim 18 , wherein each receiving port includes an electrical power port located radially inward from the plurality of fastening apertures.

21. The robot system of claim 18 , wherein each receiving port includes a communication port located radially inward from the plurality of fastening apertures.

22. The robot system of claim 18 , wherein the modular platform includes a connection region configured to couple with another modular platform.

23. The robot system of claim 22 , wherein two or more modular platforms can be connected together in a parallel orientation and/or in a transverse orientation relative to one another and attached to the robot.

24. The robot system of claim 18 , wherein each receiving port includes an electrical power port located radially inward from the plurality of fastening apertures and a communication port located radially inward from the plurality of fastening apertures.

Assignments (3)
SECURITY INTEREST Recorded Dec 13, 2024
From: NOVITA NUTRITION, LLC
To: OPTUS BANK
Reel/Frame 069575/0851 →
SECURITY INTEREST Recorded Dec 13, 2024
From: NOVITA NUTRITION, LLC
To: OPTUS BANK
Reel/Frame 069575/0869 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2018
From: SIMKINS, MATT
To: ABB SCHWEIZ AG
Reel/Frame 046710/0749 →
Continuity (1)
Related Publication 20190366553A1 · Dec 5, 2019
Cited By (4)
US 12,208,518 US 12,257,694 US 12,285,860 US 12,629,787